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Optical heterodyne investigation of the microwave frequency acoustic properties of liquids.

机译:光学外差法研究液体的微波频率声学特性。

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摘要

An optical heterodyne interferometer with a state-of-the-art microwave frequency acoustic transducer was used to measure the acoustic properties of liquids and solutions at frequencies up to 1.5 GHz. Heterodyne detection with a strong optical local oscillator was used to detect a weak optical signal beam produced by Bragg deflection from an acoustic wave coupled into a liquid sample. The acoustic transducer had a frequency range of 0.2-1.5 GHz. Several liquid mixtures were measured for the first time, including aqueous dimethyl sulfoxide, and ethyl acetate in carbon disulphide. In some cases, previously unknown dispersions were characterized. A thermodynamic model (valid in the low frequency limit) involving the heat of mixing was used successfully to predict the variation of velocity with composition of liquid mixtures. With this model as a guide, an attempt was made to identify a liquid mixture which would make a superior medium for the acoustic microscope. The search produced results which supported theoretical predictions, but no superior medium was found. Solutions of biomolecules were also investigated due to interest in possible resonant acoustic modes in DNA. No dispersions or resonances were found in solutions of polyglycines, and results for DNA solutions were inconclusive. Applications of this work include general studies in liquid acoustics at very high frequencies, acoustic studies of DNA solutions, and characterization of media for such technological applications as acoustic microscopy or phase conjugation using stimulated Brillouin scattering.
机译:具有最新微波频率声换能器的光学外差干涉仪用于测量频率高达1.5 GHz的液体和溶液的声学特性。使用具有强光学本地振荡器的外差检测来检测由布拉格偏转从耦合到液体样品中的声波产生的弱光信号束。声换能器的频率范围为0.2-1.5 GHz。首次测量了几种液体混合物,包括二甲基亚砜水溶液和二硫化碳中的乙酸乙酯。在某些情况下,表征了先前未知的分散体。成功地使用涉及混合热的热力学模型(在低频范围内有效)来预测速度随液体混合物组成的变化。以此模型为指导,尝试确定一种液体混合物,该混合物将为声波显微镜提供优良的介质。搜索产生的结果支持理论预测,但未发现任何优越的媒介。由于对DNA中可能的共振声学模式感兴趣,还研究了生物分子的溶液。在聚甘氨酸溶液中未发现分散或共振现象,DNA溶液的结果尚无定论。这项工作的应用包括对非常高频率的液体声学的一般研究,对DNA溶液的声学研究以及用于诸如声学显微镜或使用受激布里渊散射的相位共轭等技术应用的介质表征。

著录项

  • 作者

    Bonney, Rob.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Electronics and Electrical.; Physics Acoustics.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;声学;
  • 关键词

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